a) A hollow circular composite pipe with 80 mm diameter is subjected to a tensile force of 250 kN as shown in Figure Q1 (a). The outer layer of the pipe is made of 10 mm thick brass and the inner layer 15 mm made of thick aluminum. The Young's modull of brass and aluminum are 100x10 MPa and 65x10 MPa respectively. ii) Determine the extension of the pipe due to the applied tensile force.
a) A hollow circular composite pipe with 80 mm diameter is subjected to a tensile force of 250 kN as shown in Figure Q1 (a). The outer layer of the pipe is made of 10 mm thick brass and the inner layer 15 mm made of thick aluminum. The Young's modull of brass and aluminum are 100x10 MPa and 65x10 MPa respectively. ii) Determine the extension of the pipe due to the applied tensile force.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Please show how you solve the equation in step

Transcribed Image Text:a) A hollow circular composite pipe with 80 mm diameter is subjected to a tensile force of
250 kN as shown in Figure Q1 (a). The outer layer of the pipe is made of 10 mm thick
brass and the inner layer 15 mm made of thick aluminum. The Young's modull of brass
and aluminum are 100x10 MPa and 65x10 MPa respectively.
ii) Determine the extension of the pipe due to the applied tensile force.
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